Pogány Miklós, Dankó Tamás, Hegyi-Kaló Júlia, Kámán-Tóth Evelin, Szám Dorottya Réka, Hamow Kamirán Áron, Kalapos Balázs, Kiss Levente, Fodor József, Gullner Gábor, Váczy Kálmán Zoltán, Barna Balázs
Centre for Agricultural Research, 2462 Martonvásár, Hungary.
Food and Wine Research Institute, Eszterházy Károly Catholic University, 3300 Eger, Hungary.
Plants (Basel). 2022 Mar 24;11(7):864. doi: 10.3390/plants11070864.
Noble rot is a favorable form of the interaction between grape ( spp.) berries and the phytopathogenic fungus . The transcriptome pattern of grapevine cells subject to natural noble rot development in the historic Hungarian Tokaj wine region has not been previously published. Furmint, a traditional white Tokaj variety suited to develop great quality noble rot was used in the experiments. Exploring a subset of the Furmint transcriptome redox and hormonal changes distinguishing between noble rot and bunch rot was revealed. Noble rot is defined by an early spike in abscisic acid (ABA) accumulation and a pronounced remodeling of ABA-related gene expression. Transcription of glutathione S-transferase isoforms is uniquely upregulated, whereas gene expression of some sectors of the antioxidative apparatus (e.g., catalases, carotenoid biosynthesis) is downregulated. These mRNA responses are lacking in berries exposed to bunch rot. Our results help to explain molecular details behind the fine and dynamic balance between noble rot and bunch rot development.
贵腐菌是葡萄浆果与植物病原真菌之间一种有利的相互作用形式。历史悠久的匈牙利托卡伊葡萄酒产区自然发生贵腐菌侵染时葡萄细胞的转录组模式此前尚未发表。实验使用了福尔明特,这是一种适合发展出优质贵腐菌的传统托卡伊白葡萄品种。通过对福尔明特转录组的一个子集进行研究,揭示了区分贵腐菌和灰霉病的氧化还原和激素变化。贵腐菌的特征是脱落酸(ABA)积累早期激增以及ABA相关基因表达的显著重塑。谷胱甘肽S-转移酶同工型的转录被独特地上调,而抗氧化装置某些部分(如过氧化氢酶、类胡萝卜素生物合成)的基因表达则被下调。遭受灰霉病侵染的浆果缺乏这些mRNA反应。我们的结果有助于解释贵腐菌和灰霉病发展之间微妙而动态平衡背后的分子细节。